The laminar fully developed nanofluid flow and heat transfer in a vertical channel are investigated. By means of a new set of similarity variables, the governing equations are reduced to a set of three coupled equations with an unknown constant, which are solved along with the corresponding boundary conditions and the mass flux conservation relation by the homotopy perturbation method (HPM). We have tried to show reliability and performance of the present method compared with the numerical method (Runge–Kutta fourth-rate) to solve this problem. The effects of the Grashof number (Gr), Prandtl number (Pr) and Reynolds number (Re) on the nanofluid flows are then investigated successively. The effects of the Brownian motion parameter (Nb), the ...
In this article, the laminar mixed convection of Al2O3-Water nanofluid flow in a horizontal flat tub...
A steady mixed convection boundary layer flow near a stagnation point on a permeable vertical surfac...
The steady mixed convection boundary layer flow over a horizontal circular cylinder filled with nano...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
Laminar mixed convection of an Al2O3/water nanofluid inside a vertical channel is investigated numer...
Nanofluids are considered to offer important advantages over conventional heat transfer fluids. Howe...
Nanofluids are considered to offer important advantages over conventional heat transfer fluids. Howe...
The problem of steady laminar mixed convection flow and heat transfer past a moving vertical thin ne...
The problem of steady laminar mixed convection flow and heat transfer past a moving vertical thin ne...
In this study, the effect of g-jitter fully developed heat transfer by mixed convection flow of nano...
The problem of steady laminar mixed convection flow and heat transfer past a moving vertical thin ne...
In this investigation, the influence of the prominent viscous dissipation effect on mixed convection...
We present the numerical investigation of the steady mixed convection boundary layer flow over a ver...
In this paper, the semi-analytical/numerical technique known as the homotopy analysis method (HAM) ...
In this article, the laminar mixed convection of Al2O3-Water nanofluid flow in a horizontal flat tub...
A steady mixed convection boundary layer flow near a stagnation point on a permeable vertical surfac...
The steady mixed convection boundary layer flow over a horizontal circular cylinder filled with nano...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
AbstractThe laminar fully developed nanofluid flow and heat transfer in a vertical channel are inves...
Laminar mixed convection of an Al2O3/water nanofluid inside a vertical channel is investigated numer...
Nanofluids are considered to offer important advantages over conventional heat transfer fluids. Howe...
Nanofluids are considered to offer important advantages over conventional heat transfer fluids. Howe...
The problem of steady laminar mixed convection flow and heat transfer past a moving vertical thin ne...
The problem of steady laminar mixed convection flow and heat transfer past a moving vertical thin ne...
In this study, the effect of g-jitter fully developed heat transfer by mixed convection flow of nano...
The problem of steady laminar mixed convection flow and heat transfer past a moving vertical thin ne...
In this investigation, the influence of the prominent viscous dissipation effect on mixed convection...
We present the numerical investigation of the steady mixed convection boundary layer flow over a ver...
In this paper, the semi-analytical/numerical technique known as the homotopy analysis method (HAM) ...
In this article, the laminar mixed convection of Al2O3-Water nanofluid flow in a horizontal flat tub...
A steady mixed convection boundary layer flow near a stagnation point on a permeable vertical surfac...
The steady mixed convection boundary layer flow over a horizontal circular cylinder filled with nano...